1 // SPDX-License-Identifier: GPL-2.0-only
3 * Driver for keys on GPIO lines capable of generating interrupts.
5 * Copyright 2005 Phil Blundell
6 * Copyright 2010, 2011 David Jander <david@protonic.nl>
9 #include <linux/module.h>
11 #include <linux/hrtimer.h>
12 #include <linux/init.h>
14 #include <linux/interrupt.h>
15 #include <linux/irq.h>
16 #include <linux/sched.h>
18 #include <linux/slab.h>
19 #include <linux/sysctl.h>
20 #include <linux/proc_fs.h>
21 #include <linux/delay.h>
22 #include <linux/platform_device.h>
23 #include <linux/input.h>
24 #include <linux/gpio_keys.h>
25 #include <linux/workqueue.h>
26 #include <linux/gpio.h>
27 #include <linux/gpio/consumer.h>
29 #include <linux/of_irq.h>
30 #include <linux/spinlock.h>
31 #include <dt-bindings/input/gpio-keys.h>
33 struct gpio_button_data
{
34 const struct gpio_keys_button
*button
;
35 struct input_dev
*input
;
36 struct gpio_desc
*gpiod
;
40 struct hrtimer release_timer
;
41 unsigned int release_delay
; /* in msecs, for IRQ-only buttons */
43 struct delayed_work work
;
44 struct hrtimer debounce_timer
;
45 unsigned int software_debounce
; /* in msecs, for GPIO-driven buttons */
49 unsigned int wakeup_trigger_type
;
55 bool debounce_use_hrtimer
;
58 struct gpio_keys_drvdata
{
59 const struct gpio_keys_platform_data
*pdata
;
60 struct input_dev
*input
;
61 struct mutex disable_lock
;
62 unsigned short *keymap
;
63 struct gpio_button_data data
[];
67 * SYSFS interface for enabling/disabling keys and switches:
69 * There are 4 attributes under /sys/devices/platform/gpio-keys/
70 * keys [ro] - bitmap of keys (EV_KEY) which can be
72 * switches [ro] - bitmap of switches (EV_SW) which can be
74 * disabled_keys [rw] - bitmap of keys currently disabled
75 * disabled_switches [rw] - bitmap of switches currently disabled
77 * Userland can change these values and hence disable event generation
78 * for each key (or switch). Disabling a key means its interrupt line
81 * For example, if we have following switches set up as gpio-keys:
83 * SW_CAMERA_LENS_COVER = 9
84 * SW_KEYPAD_SLIDE = 10
85 * SW_FRONT_PROXIMITY = 11
86 * This is read from switches:
88 * Next we want to disable proximity (11) and dock (5), we write:
90 * to file disabled_switches. Now proximity and dock IRQs are disabled.
91 * This can be verified by reading the file disabled_switches:
93 * If we now want to enable proximity (11) switch we write:
95 * to disabled_switches.
97 * We can disable only those keys which don't allow sharing the irq.
101 * get_n_events_by_type() - returns maximum number of events per @type
102 * @type: type of button (%EV_KEY, %EV_SW)
104 * Return value of this function can be used to allocate bitmap
105 * large enough to hold all bits for given type.
107 static int get_n_events_by_type(int type
)
109 BUG_ON(type
!= EV_SW
&& type
!= EV_KEY
);
111 return (type
== EV_KEY
) ? KEY_CNT
: SW_CNT
;
115 * get_bm_events_by_type() - returns bitmap of supported events per @type
116 * @dev: input device from which bitmap is retrieved
117 * @type: type of button (%EV_KEY, %EV_SW)
119 * Return value of this function can be used to allocate bitmap
120 * large enough to hold all bits for given type.
122 static const unsigned long *get_bm_events_by_type(struct input_dev
*dev
,
125 BUG_ON(type
!= EV_SW
&& type
!= EV_KEY
);
127 return (type
== EV_KEY
) ? dev
->keybit
: dev
->swbit
;
130 static void gpio_keys_quiesce_key(void *data
)
132 struct gpio_button_data
*bdata
= data
;
135 hrtimer_cancel(&bdata
->release_timer
);
136 else if (bdata
->debounce_use_hrtimer
)
137 hrtimer_cancel(&bdata
->debounce_timer
);
139 cancel_delayed_work_sync(&bdata
->work
);
143 * gpio_keys_disable_button() - disables given GPIO button
144 * @bdata: button data for button to be disabled
146 * Disables button pointed by @bdata. This is done by masking
147 * IRQ line. After this function is called, button won't generate
148 * input events anymore. Note that one can only disable buttons
149 * that don't share IRQs.
151 * Make sure that @bdata->disable_lock is locked when entering
152 * this function to avoid races when concurrent threads are
153 * disabling buttons at the same time.
155 static void gpio_keys_disable_button(struct gpio_button_data
*bdata
)
157 if (!bdata
->disabled
) {
159 * Disable IRQ and associated timer/work structure.
161 disable_irq(bdata
->irq
);
162 gpio_keys_quiesce_key(bdata
);
163 bdata
->disabled
= true;
168 * gpio_keys_enable_button() - enables given GPIO button
169 * @bdata: button data for button to be disabled
171 * Enables given button pointed by @bdata.
173 * Make sure that @bdata->disable_lock is locked when entering
174 * this function to avoid races with concurrent threads trying
175 * to enable the same button at the same time.
177 static void gpio_keys_enable_button(struct gpio_button_data
*bdata
)
179 if (bdata
->disabled
) {
180 enable_irq(bdata
->irq
);
181 bdata
->disabled
= false;
186 * gpio_keys_attr_show_helper() - fill in stringified bitmap of buttons
187 * @ddata: pointer to drvdata
188 * @buf: buffer where stringified bitmap is written
189 * @type: button type (%EV_KEY, %EV_SW)
190 * @only_disabled: does caller want only those buttons that are
191 * currently disabled or all buttons that can be
194 * This function writes buttons that can be disabled to @buf. If
195 * @only_disabled is true, then @buf contains only those buttons
196 * that are currently disabled. Returns 0 on success or negative
199 static ssize_t
gpio_keys_attr_show_helper(struct gpio_keys_drvdata
*ddata
,
200 char *buf
, unsigned int type
,
203 int n_events
= get_n_events_by_type(type
);
208 bits
= bitmap_zalloc(n_events
, GFP_KERNEL
);
212 for (i
= 0; i
< ddata
->pdata
->nbuttons
; i
++) {
213 struct gpio_button_data
*bdata
= &ddata
->data
[i
];
215 if (bdata
->button
->type
!= type
)
218 if (only_disabled
&& !bdata
->disabled
)
221 __set_bit(*bdata
->code
, bits
);
224 ret
= scnprintf(buf
, PAGE_SIZE
- 1, "%*pbl", n_events
, bits
);
234 * gpio_keys_attr_store_helper() - enable/disable buttons based on given bitmap
235 * @ddata: pointer to drvdata
236 * @buf: buffer from userspace that contains stringified bitmap
237 * @type: button type (%EV_KEY, %EV_SW)
239 * This function parses stringified bitmap from @buf and disables/enables
240 * GPIO buttons accordingly. Returns 0 on success and negative error
243 static ssize_t
gpio_keys_attr_store_helper(struct gpio_keys_drvdata
*ddata
,
244 const char *buf
, unsigned int type
)
246 int n_events
= get_n_events_by_type(type
);
247 const unsigned long *bitmap
= get_bm_events_by_type(ddata
->input
, type
);
251 unsigned long *bits
__free(bitmap
) = bitmap_alloc(n_events
, GFP_KERNEL
);
255 error
= bitmap_parselist(buf
, bits
, n_events
);
260 if (!bitmap_subset(bits
, bitmap
, n_events
))
263 for (i
= 0; i
< ddata
->pdata
->nbuttons
; i
++) {
264 struct gpio_button_data
*bdata
= &ddata
->data
[i
];
266 if (bdata
->button
->type
!= type
)
269 if (test_bit(*bdata
->code
, bits
) &&
270 !bdata
->button
->can_disable
) {
275 guard(mutex
)(&ddata
->disable_lock
);
277 for (i
= 0; i
< ddata
->pdata
->nbuttons
; i
++) {
278 struct gpio_button_data
*bdata
= &ddata
->data
[i
];
280 if (bdata
->button
->type
!= type
)
283 if (test_bit(*bdata
->code
, bits
))
284 gpio_keys_disable_button(bdata
);
286 gpio_keys_enable_button(bdata
);
292 #define ATTR_SHOW_FN(name, type, only_disabled) \
293 static ssize_t gpio_keys_show_##name(struct device *dev, \
294 struct device_attribute *attr, \
297 struct platform_device *pdev = to_platform_device(dev); \
298 struct gpio_keys_drvdata *ddata = platform_get_drvdata(pdev); \
300 return gpio_keys_attr_show_helper(ddata, buf, \
301 type, only_disabled); \
304 ATTR_SHOW_FN(keys
, EV_KEY
, false);
305 ATTR_SHOW_FN(switches
, EV_SW
, false);
306 ATTR_SHOW_FN(disabled_keys
, EV_KEY
, true);
307 ATTR_SHOW_FN(disabled_switches
, EV_SW
, true);
312 * /sys/devices/platform/gpio-keys/keys [ro]
313 * /sys/devices/platform/gpio-keys/switches [ro]
315 static DEVICE_ATTR(keys
, S_IRUGO
, gpio_keys_show_keys
, NULL
);
316 static DEVICE_ATTR(switches
, S_IRUGO
, gpio_keys_show_switches
, NULL
);
318 #define ATTR_STORE_FN(name, type) \
319 static ssize_t gpio_keys_store_##name(struct device *dev, \
320 struct device_attribute *attr, \
324 struct platform_device *pdev = to_platform_device(dev); \
325 struct gpio_keys_drvdata *ddata = platform_get_drvdata(pdev); \
328 error = gpio_keys_attr_store_helper(ddata, buf, type); \
335 ATTR_STORE_FN(disabled_keys
, EV_KEY
);
336 ATTR_STORE_FN(disabled_switches
, EV_SW
);
341 * /sys/devices/platform/gpio-keys/disabled_keys [rw]
342 * /sys/devices/platform/gpio-keys/disables_switches [rw]
344 static DEVICE_ATTR(disabled_keys
, S_IWUSR
| S_IRUGO
,
345 gpio_keys_show_disabled_keys
,
346 gpio_keys_store_disabled_keys
);
347 static DEVICE_ATTR(disabled_switches
, S_IWUSR
| S_IRUGO
,
348 gpio_keys_show_disabled_switches
,
349 gpio_keys_store_disabled_switches
);
351 static struct attribute
*gpio_keys_attrs
[] = {
353 &dev_attr_switches
.attr
,
354 &dev_attr_disabled_keys
.attr
,
355 &dev_attr_disabled_switches
.attr
,
358 ATTRIBUTE_GROUPS(gpio_keys
);
360 static void gpio_keys_gpio_report_event(struct gpio_button_data
*bdata
)
362 const struct gpio_keys_button
*button
= bdata
->button
;
363 struct input_dev
*input
= bdata
->input
;
364 unsigned int type
= button
->type
?: EV_KEY
;
367 state
= bdata
->debounce_use_hrtimer
?
368 gpiod_get_value(bdata
->gpiod
) :
369 gpiod_get_value_cansleep(bdata
->gpiod
);
371 dev_err(input
->dev
.parent
,
372 "failed to get gpio state: %d\n", state
);
376 if (type
== EV_ABS
) {
378 input_event(input
, type
, button
->code
, button
->value
);
380 input_event(input
, type
, *bdata
->code
, state
);
384 static void gpio_keys_debounce_event(struct gpio_button_data
*bdata
)
386 gpio_keys_gpio_report_event(bdata
);
387 input_sync(bdata
->input
);
389 if (bdata
->button
->wakeup
)
390 pm_relax(bdata
->input
->dev
.parent
);
393 static void gpio_keys_gpio_work_func(struct work_struct
*work
)
395 struct gpio_button_data
*bdata
=
396 container_of(work
, struct gpio_button_data
, work
.work
);
398 gpio_keys_debounce_event(bdata
);
401 static enum hrtimer_restart
gpio_keys_debounce_timer(struct hrtimer
*t
)
403 struct gpio_button_data
*bdata
=
404 container_of(t
, struct gpio_button_data
, debounce_timer
);
406 gpio_keys_debounce_event(bdata
);
408 return HRTIMER_NORESTART
;
411 static irqreturn_t
gpio_keys_gpio_isr(int irq
, void *dev_id
)
413 struct gpio_button_data
*bdata
= dev_id
;
415 BUG_ON(irq
!= bdata
->irq
);
417 if (bdata
->button
->wakeup
) {
418 const struct gpio_keys_button
*button
= bdata
->button
;
420 pm_stay_awake(bdata
->input
->dev
.parent
);
421 if (bdata
->suspended
&&
422 (button
->type
== 0 || button
->type
== EV_KEY
)) {
424 * Simulate wakeup key press in case the key has
425 * already released by the time we got interrupt
428 input_report_key(bdata
->input
, button
->code
, 1);
432 if (bdata
->debounce_use_hrtimer
) {
433 hrtimer_start(&bdata
->debounce_timer
,
434 ms_to_ktime(bdata
->software_debounce
),
437 mod_delayed_work(system_wq
,
439 msecs_to_jiffies(bdata
->software_debounce
));
445 static enum hrtimer_restart
gpio_keys_irq_timer(struct hrtimer
*t
)
447 struct gpio_button_data
*bdata
= container_of(t
,
448 struct gpio_button_data
,
450 struct input_dev
*input
= bdata
->input
;
452 if (bdata
->key_pressed
) {
453 input_report_key(input
, *bdata
->code
, 0);
455 bdata
->key_pressed
= false;
458 return HRTIMER_NORESTART
;
461 static irqreturn_t
gpio_keys_irq_isr(int irq
, void *dev_id
)
463 struct gpio_button_data
*bdata
= dev_id
;
464 struct input_dev
*input
= bdata
->input
;
466 BUG_ON(irq
!= bdata
->irq
);
468 guard(spinlock_irqsave
)(&bdata
->lock
);
470 if (!bdata
->key_pressed
) {
471 if (bdata
->button
->wakeup
)
472 pm_wakeup_event(bdata
->input
->dev
.parent
, 0);
474 input_report_key(input
, *bdata
->code
, 1);
477 if (!bdata
->release_delay
) {
478 input_report_key(input
, *bdata
->code
, 0);
483 bdata
->key_pressed
= true;
486 if (bdata
->release_delay
)
487 hrtimer_start(&bdata
->release_timer
,
488 ms_to_ktime(bdata
->release_delay
),
489 HRTIMER_MODE_REL_HARD
);
494 static int gpio_keys_setup_key(struct platform_device
*pdev
,
495 struct input_dev
*input
,
496 struct gpio_keys_drvdata
*ddata
,
497 const struct gpio_keys_button
*button
,
499 struct fwnode_handle
*child
)
501 const char *desc
= button
->desc
? button
->desc
: "gpio_keys";
502 struct device
*dev
= &pdev
->dev
;
503 struct gpio_button_data
*bdata
= &ddata
->data
[idx
];
505 unsigned long irqflags
;
506 const char *wakedesc
;
510 bdata
->input
= input
;
511 bdata
->button
= button
;
512 spin_lock_init(&bdata
->lock
);
515 bdata
->gpiod
= devm_fwnode_gpiod_get(dev
, child
,
516 NULL
, GPIOD_IN
, desc
);
517 if (IS_ERR(bdata
->gpiod
)) {
518 error
= PTR_ERR(bdata
->gpiod
);
519 if (error
!= -ENOENT
)
520 return dev_err_probe(dev
, error
,
521 "failed to get gpio\n");
524 * GPIO is optional, we may be dealing with
525 * purely interrupt-driven setup.
529 } else if (gpio_is_valid(button
->gpio
)) {
531 * Legacy GPIO number, so request the GPIO here and
532 * convert it to descriptor.
534 unsigned flags
= GPIOF_IN
;
536 if (button
->active_low
)
537 flags
|= GPIOF_ACTIVE_LOW
;
539 error
= devm_gpio_request_one(dev
, button
->gpio
, flags
, desc
);
541 dev_err(dev
, "Failed to request GPIO %d, error %d\n",
542 button
->gpio
, error
);
546 bdata
->gpiod
= gpio_to_desc(button
->gpio
);
552 bool active_low
= gpiod_is_active_low(bdata
->gpiod
);
554 if (button
->debounce_interval
) {
555 error
= gpiod_set_debounce(bdata
->gpiod
,
556 button
->debounce_interval
* 1000);
557 /* use timer if gpiolib doesn't provide debounce */
559 bdata
->software_debounce
=
560 button
->debounce_interval
;
563 * If reading the GPIO won't sleep, we can use a
564 * hrtimer instead of a standard timer for the software
565 * debounce, to reduce the latency as much as possible.
567 bdata
->debounce_use_hrtimer
=
568 !gpiod_cansleep(bdata
->gpiod
);
572 * If an interrupt was specified, use it instead of the gpio
573 * interrupt and use the gpio for reading the state. A separate
574 * interrupt may be used as the main button interrupt for
575 * runtime PM to detect events also in deeper idle states. If a
576 * dedicated wakeirq is used for system suspend only, see below
577 * for bdata->wakeirq setup.
580 bdata
->irq
= button
->irq
;
582 irq
= gpiod_to_irq(bdata
->gpiod
);
585 dev_err_probe(dev
, error
,
586 "Unable to get irq number for GPIO %d\n",
593 INIT_DELAYED_WORK(&bdata
->work
, gpio_keys_gpio_work_func
);
595 hrtimer_init(&bdata
->debounce_timer
,
596 CLOCK_REALTIME
, HRTIMER_MODE_REL
);
597 bdata
->debounce_timer
.function
= gpio_keys_debounce_timer
;
599 isr
= gpio_keys_gpio_isr
;
600 irqflags
= IRQF_TRIGGER_RISING
| IRQF_TRIGGER_FALLING
;
602 switch (button
->wakeup_event_action
) {
603 case EV_ACT_ASSERTED
:
604 bdata
->wakeup_trigger_type
= active_low
?
605 IRQ_TYPE_EDGE_FALLING
: IRQ_TYPE_EDGE_RISING
;
607 case EV_ACT_DEASSERTED
:
608 bdata
->wakeup_trigger_type
= active_low
?
609 IRQ_TYPE_EDGE_RISING
: IRQ_TYPE_EDGE_FALLING
;
614 * For other cases, we are OK letting suspend/resume
615 * not reconfigure the trigger type.
621 dev_err(dev
, "Found button without gpio or irq\n");
625 bdata
->irq
= button
->irq
;
627 if (button
->type
&& button
->type
!= EV_KEY
) {
628 dev_err(dev
, "Only EV_KEY allowed for IRQ buttons.\n");
632 bdata
->release_delay
= button
->debounce_interval
;
633 hrtimer_init(&bdata
->release_timer
,
634 CLOCK_REALTIME
, HRTIMER_MODE_REL_HARD
);
635 bdata
->release_timer
.function
= gpio_keys_irq_timer
;
637 isr
= gpio_keys_irq_isr
;
641 * For IRQ buttons, there is no interrupt for release.
642 * So we don't need to reconfigure the trigger type for wakeup.
646 bdata
->code
= &ddata
->keymap
[idx
];
647 *bdata
->code
= button
->code
;
648 input_set_capability(input
, button
->type
?: EV_KEY
, *bdata
->code
);
651 * Install custom action to cancel release timer and
654 error
= devm_add_action(dev
, gpio_keys_quiesce_key
, bdata
);
656 dev_err(dev
, "failed to register quiesce action, error: %d\n",
662 * If platform has specified that the button can be disabled,
663 * we don't want it to share the interrupt line.
665 if (!button
->can_disable
)
666 irqflags
|= IRQF_SHARED
;
668 error
= devm_request_any_context_irq(dev
, bdata
->irq
, isr
, irqflags
,
671 dev_err(dev
, "Unable to claim irq %d; error %d\n",
676 if (!button
->wakeirq
)
679 /* Use :wakeup suffix like drivers/base/power/wakeirq.c does */
680 wakedesc
= devm_kasprintf(dev
, GFP_KERNEL
, "%s:wakeup", desc
);
684 bdata
->wakeirq
= button
->wakeirq
;
685 irqflags
|= IRQF_NO_SUSPEND
;
688 * Wakeirq shares the handler with the main interrupt, it's only
689 * active during system suspend. See gpio_keys_button_enable_wakeup()
690 * and gpio_keys_button_disable_wakeup().
692 error
= devm_request_any_context_irq(dev
, bdata
->wakeirq
, isr
,
693 irqflags
, wakedesc
, bdata
);
695 dev_err(dev
, "Unable to claim wakeirq %d; error %d\n",
701 * Disable wakeirq until suspend. IRQF_NO_AUTOEN won't work if
702 * IRQF_SHARED was set based on !button->can_disable.
704 disable_irq(bdata
->wakeirq
);
709 static void gpio_keys_report_state(struct gpio_keys_drvdata
*ddata
)
711 struct input_dev
*input
= ddata
->input
;
714 for (i
= 0; i
< ddata
->pdata
->nbuttons
; i
++) {
715 struct gpio_button_data
*bdata
= &ddata
->data
[i
];
717 gpio_keys_gpio_report_event(bdata
);
722 static int gpio_keys_open(struct input_dev
*input
)
724 struct gpio_keys_drvdata
*ddata
= input_get_drvdata(input
);
725 const struct gpio_keys_platform_data
*pdata
= ddata
->pdata
;
729 error
= pdata
->enable(input
->dev
.parent
);
734 /* Report current state of buttons that are connected to GPIOs */
735 gpio_keys_report_state(ddata
);
740 static void gpio_keys_close(struct input_dev
*input
)
742 struct gpio_keys_drvdata
*ddata
= input_get_drvdata(input
);
743 const struct gpio_keys_platform_data
*pdata
= ddata
->pdata
;
746 pdata
->disable(input
->dev
.parent
);
750 * Handlers for alternative sources of platform_data
754 * Translate properties into platform_data
756 static struct gpio_keys_platform_data
*
757 gpio_keys_get_devtree_pdata(struct device
*dev
)
759 struct gpio_keys_platform_data
*pdata
;
760 struct gpio_keys_button
*button
;
763 nbuttons
= device_get_child_node_count(dev
);
765 return ERR_PTR(-ENODEV
);
767 pdata
= devm_kzalloc(dev
,
768 sizeof(*pdata
) + nbuttons
* sizeof(*button
),
771 return ERR_PTR(-ENOMEM
);
773 button
= (struct gpio_keys_button
*)(pdata
+ 1);
775 pdata
->buttons
= button
;
776 pdata
->nbuttons
= nbuttons
;
778 pdata
->rep
= device_property_read_bool(dev
, "autorepeat");
780 device_property_read_string(dev
, "label", &pdata
->name
);
782 device_for_each_child_node_scoped(dev
, child
) {
783 if (is_of_node(child
)) {
784 irq
= of_irq_get_byname(to_of_node(child
), "irq");
788 irq
= of_irq_get_byname(to_of_node(child
), "wakeup");
790 button
->wakeirq
= irq
;
792 if (!button
->irq
&& !button
->wakeirq
)
794 irq_of_parse_and_map(to_of_node(child
), 0);
797 if (fwnode_property_read_u32(child
, "linux,code",
799 dev_err(dev
, "Button without keycode\n");
800 return ERR_PTR(-EINVAL
);
803 fwnode_property_read_string(child
, "label", &button
->desc
);
805 if (fwnode_property_read_u32(child
, "linux,input-type",
807 button
->type
= EV_KEY
;
809 fwnode_property_read_u32(child
, "linux,input-value",
810 (u32
*)&button
->value
);
813 fwnode_property_read_bool(child
, "wakeup-source") ||
815 fwnode_property_read_bool(child
, "gpio-key,wakeup");
817 fwnode_property_read_u32(child
, "wakeup-event-action",
818 &button
->wakeup_event_action
);
820 button
->can_disable
=
821 fwnode_property_read_bool(child
, "linux,can-disable");
823 if (fwnode_property_read_u32(child
, "debounce-interval",
824 &button
->debounce_interval
))
825 button
->debounce_interval
= 5;
833 static const struct of_device_id gpio_keys_of_match
[] = {
834 { .compatible
= "gpio-keys", },
837 MODULE_DEVICE_TABLE(of
, gpio_keys_of_match
);
839 static int gpio_keys_probe(struct platform_device
*pdev
)
841 struct device
*dev
= &pdev
->dev
;
842 const struct gpio_keys_platform_data
*pdata
= dev_get_platdata(dev
);
843 struct fwnode_handle
*child
= NULL
;
844 struct gpio_keys_drvdata
*ddata
;
845 struct input_dev
*input
;
850 pdata
= gpio_keys_get_devtree_pdata(dev
);
852 return PTR_ERR(pdata
);
855 ddata
= devm_kzalloc(dev
, struct_size(ddata
, data
, pdata
->nbuttons
),
858 dev_err(dev
, "failed to allocate state\n");
862 ddata
->keymap
= devm_kcalloc(dev
,
863 pdata
->nbuttons
, sizeof(ddata
->keymap
[0]),
868 input
= devm_input_allocate_device(dev
);
870 dev_err(dev
, "failed to allocate input device\n");
874 ddata
->pdata
= pdata
;
875 ddata
->input
= input
;
876 mutex_init(&ddata
->disable_lock
);
878 platform_set_drvdata(pdev
, ddata
);
879 input_set_drvdata(input
, ddata
);
881 input
->name
= pdata
->name
? : pdev
->name
;
882 input
->phys
= "gpio-keys/input0";
883 input
->dev
.parent
= dev
;
884 input
->open
= gpio_keys_open
;
885 input
->close
= gpio_keys_close
;
887 input
->id
.bustype
= BUS_HOST
;
888 input
->id
.vendor
= 0x0001;
889 input
->id
.product
= 0x0001;
890 input
->id
.version
= 0x0100;
892 input
->keycode
= ddata
->keymap
;
893 input
->keycodesize
= sizeof(ddata
->keymap
[0]);
894 input
->keycodemax
= pdata
->nbuttons
;
896 /* Enable auto repeat feature of Linux input subsystem */
898 __set_bit(EV_REP
, input
->evbit
);
900 for (i
= 0; i
< pdata
->nbuttons
; i
++) {
901 const struct gpio_keys_button
*button
= &pdata
->buttons
[i
];
903 if (!dev_get_platdata(dev
)) {
904 child
= device_get_next_child_node(dev
, child
);
907 "missing child device node for entry %d\n",
913 error
= gpio_keys_setup_key(pdev
, input
, ddata
,
916 fwnode_handle_put(child
);
924 fwnode_handle_put(child
);
926 error
= input_register_device(input
);
928 dev_err(dev
, "Unable to register input device, error: %d\n",
933 device_init_wakeup(dev
, wakeup
);
938 static int __maybe_unused
939 gpio_keys_button_enable_wakeup(struct gpio_button_data
*bdata
)
943 error
= enable_irq_wake(bdata
->irq
);
945 dev_err(bdata
->input
->dev
.parent
,
946 "failed to configure IRQ %d as wakeup source: %d\n",
951 if (bdata
->wakeup_trigger_type
) {
952 error
= irq_set_irq_type(bdata
->irq
,
953 bdata
->wakeup_trigger_type
);
955 dev_err(bdata
->input
->dev
.parent
,
956 "failed to set wakeup trigger %08x for IRQ %d: %d\n",
957 bdata
->wakeup_trigger_type
, bdata
->irq
, error
);
958 disable_irq_wake(bdata
->irq
);
963 if (bdata
->wakeirq
) {
964 enable_irq(bdata
->wakeirq
);
965 disable_irq(bdata
->irq
);
971 static void __maybe_unused
972 gpio_keys_button_disable_wakeup(struct gpio_button_data
*bdata
)
976 if (bdata
->wakeirq
) {
977 enable_irq(bdata
->irq
);
978 disable_irq(bdata
->wakeirq
);
982 * The trigger type is always both edges for gpio-based keys and we do
983 * not support changing wakeup trigger for interrupt-based keys.
985 if (bdata
->wakeup_trigger_type
) {
986 error
= irq_set_irq_type(bdata
->irq
, IRQ_TYPE_EDGE_BOTH
);
988 dev_warn(bdata
->input
->dev
.parent
,
989 "failed to restore interrupt trigger for IRQ %d: %d\n",
993 error
= disable_irq_wake(bdata
->irq
);
995 dev_warn(bdata
->input
->dev
.parent
,
996 "failed to disable IRQ %d as wake source: %d\n",
1000 static int __maybe_unused
1001 gpio_keys_enable_wakeup(struct gpio_keys_drvdata
*ddata
)
1003 struct gpio_button_data
*bdata
;
1007 for (i
= 0; i
< ddata
->pdata
->nbuttons
; i
++) {
1008 bdata
= &ddata
->data
[i
];
1009 if (bdata
->button
->wakeup
) {
1010 error
= gpio_keys_button_enable_wakeup(bdata
);
1014 bdata
->suspended
= true;
1021 bdata
= &ddata
->data
[i
];
1022 if (bdata
->button
->wakeup
)
1023 gpio_keys_button_disable_wakeup(bdata
);
1024 bdata
->suspended
= false;
1030 static void __maybe_unused
1031 gpio_keys_disable_wakeup(struct gpio_keys_drvdata
*ddata
)
1033 struct gpio_button_data
*bdata
;
1036 for (i
= 0; i
< ddata
->pdata
->nbuttons
; i
++) {
1037 bdata
= &ddata
->data
[i
];
1038 bdata
->suspended
= false;
1039 if (irqd_is_wakeup_set(irq_get_irq_data(bdata
->irq
)))
1040 gpio_keys_button_disable_wakeup(bdata
);
1044 static int gpio_keys_suspend(struct device
*dev
)
1046 struct gpio_keys_drvdata
*ddata
= dev_get_drvdata(dev
);
1047 struct input_dev
*input
= ddata
->input
;
1050 if (device_may_wakeup(dev
)) {
1051 error
= gpio_keys_enable_wakeup(ddata
);
1055 guard(mutex
)(&input
->mutex
);
1057 if (input_device_enabled(input
))
1058 gpio_keys_close(input
);
1064 static int gpio_keys_resume(struct device
*dev
)
1066 struct gpio_keys_drvdata
*ddata
= dev_get_drvdata(dev
);
1067 struct input_dev
*input
= ddata
->input
;
1070 if (device_may_wakeup(dev
)) {
1071 gpio_keys_disable_wakeup(ddata
);
1073 guard(mutex
)(&input
->mutex
);
1075 if (input_device_enabled(input
)) {
1076 error
= gpio_keys_open(input
);
1082 gpio_keys_report_state(ddata
);
1086 static DEFINE_SIMPLE_DEV_PM_OPS(gpio_keys_pm_ops
, gpio_keys_suspend
, gpio_keys_resume
);
1088 static void gpio_keys_shutdown(struct platform_device
*pdev
)
1092 ret
= gpio_keys_suspend(&pdev
->dev
);
1094 dev_err(&pdev
->dev
, "failed to shutdown\n");
1097 static struct platform_driver gpio_keys_device_driver
= {
1098 .probe
= gpio_keys_probe
,
1099 .shutdown
= gpio_keys_shutdown
,
1101 .name
= "gpio-keys",
1102 .pm
= pm_sleep_ptr(&gpio_keys_pm_ops
),
1103 .of_match_table
= gpio_keys_of_match
,
1104 .dev_groups
= gpio_keys_groups
,
1108 static int __init
gpio_keys_init(void)
1110 return platform_driver_register(&gpio_keys_device_driver
);
1113 static void __exit
gpio_keys_exit(void)
1115 platform_driver_unregister(&gpio_keys_device_driver
);
1118 late_initcall(gpio_keys_init
);
1119 module_exit(gpio_keys_exit
);
1121 MODULE_LICENSE("GPL");
1122 MODULE_AUTHOR("Phil Blundell <pb@handhelds.org>");
1123 MODULE_DESCRIPTION("Keyboard driver for GPIOs");
1124 MODULE_ALIAS("platform:gpio-keys");